Study of the Seismoelectric Effect of the Second Kind Using Molecular Sensors

The article is devoted to the study of the potential possibilities of using molecular-electronic sensors of seismic waves for field work using the seismoelectric method to explore the hydrocarbon deposits. The introduction provides an analytical review of the current state of research based on data...

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Main Authors: Vadim Potylitsyn, Danil Kudinov, Alekseev Dmitry, Ekaterina Kokhonkova, Sergey Kurkov, Ivan Egorov, Aleksandra Pliss
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/7/2301
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author Vadim Potylitsyn
Danil Kudinov
Alekseev Dmitry
Ekaterina Kokhonkova
Sergey Kurkov
Ivan Egorov
Aleksandra Pliss
author_facet Vadim Potylitsyn
Danil Kudinov
Alekseev Dmitry
Ekaterina Kokhonkova
Sergey Kurkov
Ivan Egorov
Aleksandra Pliss
author_sort Vadim Potylitsyn
collection DOAJ
description The article is devoted to the study of the potential possibilities of using molecular-electronic sensors of seismic waves for field work using the seismoelectric method to explore the hydrocarbon deposits. The introduction provides an analytical review of the current state of research based on data from science magazines and patents. It is shown that at present, seismoelectric effects are at the stage of experimental implementation into the practice of field work for oil and gas geophysical prospecting. Further in the article, theoretical estimates and results of mathematical modeling of the manifestation of seismoelectric (SE) phenomena in the regions of hydrocarbon anomalies are presented, numerical estimates of the values of the seismic and secondary electromagnetic fields are given. The analysis of the results (on a tank and real gas condensate field) showed that the use of molecular-electronic geophones, which have a higher sensitivity and operate in a wider frequency range (up to 0.1 Hz), allows one to obtain higher signal-to-noise ratio. Thus, it has been experimentally established that the use of molecular sensors for recording seismic electric effects when searching for deposits is more preferable when carrying out field work.
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spelling doaj.art-c89d975bb05c42c38caf93a339f089702023-11-21T12:01:37ZengMDPI AGSensors1424-82202021-03-01217230110.3390/s21072301Study of the Seismoelectric Effect of the Second Kind Using Molecular SensorsVadim Potylitsyn0Danil Kudinov1Alekseev Dmitry2Ekaterina Kokhonkova3Sergey Kurkov4Ivan Egorov5Aleksandra Pliss6Laboratory of Electroacoustics, Siberian Federal University, 660041 Krasnoyarsk, RussiaLaboratory of Electroacoustics, Siberian Federal University, 660041 Krasnoyarsk, RussiaLaboratory of the Geophysical Research of the Arctic and Continental Margins of the World Ocean, Phystech School of Radio Engineering and Computer Technology, 141700 Dolgoprudny, RussiaLaboratory of Electroacoustics, Siberian Federal University, 660041 Krasnoyarsk, RussiaLaboratory of the Geophysical Research of the Arctic and Continental Margins of the World Ocean, Phystech School of Radio Engineering and Computer Technology, 141700 Dolgoprudny, RussiaLaboratory of the Geophysical Research of the Arctic and Continental Margins of the World Ocean, Phystech School of Radio Engineering and Computer Technology, 141700 Dolgoprudny, RussiaLaboratory of the Geophysical Research of the Arctic and Continental Margins of the World Ocean, Phystech School of Radio Engineering and Computer Technology, 141700 Dolgoprudny, RussiaThe article is devoted to the study of the potential possibilities of using molecular-electronic sensors of seismic waves for field work using the seismoelectric method to explore the hydrocarbon deposits. The introduction provides an analytical review of the current state of research based on data from science magazines and patents. It is shown that at present, seismoelectric effects are at the stage of experimental implementation into the practice of field work for oil and gas geophysical prospecting. Further in the article, theoretical estimates and results of mathematical modeling of the manifestation of seismoelectric (SE) phenomena in the regions of hydrocarbon anomalies are presented, numerical estimates of the values of the seismic and secondary electromagnetic fields are given. The analysis of the results (on a tank and real gas condensate field) showed that the use of molecular-electronic geophones, which have a higher sensitivity and operate in a wider frequency range (up to 0.1 Hz), allows one to obtain higher signal-to-noise ratio. Thus, it has been experimentally established that the use of molecular sensors for recording seismic electric effects when searching for deposits is more preferable when carrying out field work.https://www.mdpi.com/1424-8220/21/7/2301seismoelectricsensorsgas condensate fieldmolecular-electronic geophones
spellingShingle Vadim Potylitsyn
Danil Kudinov
Alekseev Dmitry
Ekaterina Kokhonkova
Sergey Kurkov
Ivan Egorov
Aleksandra Pliss
Study of the Seismoelectric Effect of the Second Kind Using Molecular Sensors
Sensors
seismoelectric
sensors
gas condensate field
molecular-electronic geophones
title Study of the Seismoelectric Effect of the Second Kind Using Molecular Sensors
title_full Study of the Seismoelectric Effect of the Second Kind Using Molecular Sensors
title_fullStr Study of the Seismoelectric Effect of the Second Kind Using Molecular Sensors
title_full_unstemmed Study of the Seismoelectric Effect of the Second Kind Using Molecular Sensors
title_short Study of the Seismoelectric Effect of the Second Kind Using Molecular Sensors
title_sort study of the seismoelectric effect of the second kind using molecular sensors
topic seismoelectric
sensors
gas condensate field
molecular-electronic geophones
url https://www.mdpi.com/1424-8220/21/7/2301
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AT alekseevdmitry studyoftheseismoelectriceffectofthesecondkindusingmolecularsensors
AT ekaterinakokhonkova studyoftheseismoelectriceffectofthesecondkindusingmolecularsensors
AT sergeykurkov studyoftheseismoelectriceffectofthesecondkindusingmolecularsensors
AT ivanegorov studyoftheseismoelectriceffectofthesecondkindusingmolecularsensors
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